DocumentCode
1118689
Title
Nonlinear oscillation modes in the 3rd order Josephson junction circuits
Author
Araki, Kiyomzchi ; Akiyama, Keiji
Author_Institution
Fac. of Eng., Saitama Univ., Urawa, Japan
Volume
27
Issue
2
fYear
1991
fDate
3/1/1991 12:00:00 AM
Firstpage
2732
Lastpage
2735
Abstract
Autonomous third-order Josephson junction (JJ) circuits containing an angular variable are analyzed. Using piecewise linearizing approximation, the Poincare map, bifurcation diagram, attractor dimension, and Lyapunov spectrum have been efficiently obtained, especially for the chaos in this system. The authors have also obtained the almost one-dimensional feature of the chaos orbit and the fine structure of the chaos oscillation. This chaos has a low attractor dimension nearly equal to that of the quasi-periodic oscillation in nonautonomous second-order JJ circuits. The conditions for the generation and extinction of chaos are provided, since they can be useful in designing a Josephson heterodyne detector, Josephson parametric amplifiers, etc. All the unstable periodic oscillation modes are found to be embedded into the chaos orbit, and these expanding directions are tangential to the chaos orbit. Lyapunov exponents of the chaos orbit are equal to those of unstable periodic oscillation modes. The C/N of the JJ oscillators falls below -20 dB when the chaos occurs
Keywords
chaos; nonlinear network analysis; superconducting junction devices; 3rd order Josephson junction circuits; Josephson heterodyne detector; Josephson parametric amplifiers; Lyapunov spectrum; Poincare map; angular variable; attractor dimension; bifurcation diagram; chaos; chaos oscillation; nonlinear oscillation modes; piecewise linearizing approximation; quasi-periodic oscillation; third-order Josephson junction; unstable periodic oscillation modes; Bifurcation; Chaos; Character generation; Circuit analysis; Equations; Inductance; Josephson junctions; Nonlinear dynamical systems; Nonlinear systems; Voltage-controlled oscillators;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/20.133777
Filename
133777
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